36
Views
11
CrossRef citations to date
0
Altmetric
Research Article

Increased Release of Free Fe Ions in Human Erythrocytes During Aging in the Circulation

, , &
Pages 1079-1084 | Published online: 07 Jul 2009

  • Morrison, M., Jackson, C.W., Mueller, T.J., Huang, T., Dockten M.E., Walker, W.S., Singer, J.A. and Edwards, H.H. (1983) "Does cell density correlate with red cell age?", Biomed. Biochim. Acta 42, S107-S111.
  • Kannan, R., Yuan, J. and Low, P.S. (1991) "Isolation and partial characterization of antibody- and globin-enriched complexes from membranes of dense human erythrocytes", Biochem. J. 278, 57-62.
  • Hochstein, P. and Jain, S.K. (1981) "Association of lipid peroxidation and polymelization of membrane proteins with erythrocyte aging", Fed. Proc. 40, 183-188.
  • Jain, S.K. (1988) "Evidence for membrane lipid peroxidation during the in vivo aging of human erythrocytes", Biochim. Biophys. Acta 937, 205-210.
  • Ando, K., Beppu, M. and Kikugawa, K. (1995) "Evidence for accumulation of lipidhydroperoxides during the aging of human red blood cells in the circulation", Biol. Pharm. Bull. 18, 659-663.
  • Bartosz, G., Soszynski, M. and Wasilewski, A. (1982) "Aging of the erythrocyte XII. Protein composition of the membrane", Meat. Ageing Dev. 19, 45-52.
  • Casey, J.R. and Reithmeier, R.A.F. (1991) "Analysis of the oligomeric state of band 3, the anion transport protein of the human erythrocyte membrane, by size exclusion high performance liquid chromatography: oligomeric stability and origin of heterogeneity", J. Biol. Chem. 266, 15726-15737.
  • Oliver, C.N., Ahn, B.-W., Moerman, E.J., Goldstein, S. and Stadtman, E.R. (1987) "Age-related changes in oxidized proteins", J. Biol. Chem. 262, 5488-5491.
  • Ando, K., Kikugawa, K. and Beppu, M. (1997) "Induction of band 3 aggregation in erythrocytes results in anti-band 3 autoantibody binding to the carbohydrate epitopes of band 3", Arch. Biochem. Biophys. 339, 250-257.
  • Ando, K., Beppu, M., Kikugawa, K., Nagai, R. and Horiuchi, S. (1999) "Membrane proteins of human erythrocytes are modified by advanced glycation end products during aging in the circulation", Biochem. Biophys. Res. Commun. 258, 123-127.
  • Ando, K., Kikugawa, K. and Beppu, M. (1994) "Involvement of sialylated poly-N-acetyllactosaminyl sugar chains of band 3 glycoprotein on senescent erythrocytes in anti-band 3 autoantibody binding", J. Biol. Chem. 269, 19394-19398.
  • Beppu, M., Mizukami, A., Nagoya, M. and Kikugawa, K. (1990) "Binding of anti-band 3 autoantibody to oxidatively damaged erythrocytes: formation of senescent antigen on erythrocyte surface by an oxidative mechanism", J. Biol. Chem. 265, 3226-3233.
  • Eda, S., Kikugawa, K. and Beppu, M. (1997) "Oxidatively damaged erythrocytes are recognized by membrane proteins of macrophages", Free Radie. Res. 27, 23-30.
  • Kikugawa, K., Kosugi, H. and Asakura, T. (1984) "Effect of malondialdehyde, a product of lipid peroxidation, on the function and stability of hemoglobin", Arch. Biochem. Biophys. 229, 7-14.
  • Williams, W.J. (1986) "Examination of the Blood", In: Beutler, E., Williams, WJ., Erslev, A.J. and Lichtman, M.A., eds, Haematology (McGraw-Hill, New York), pp 9-25.
  • Kruck, T.F.K. and Kalow, W (1985) "Determination of desferoxamine and a major metabolite by high-performance liquid chromatography. Application to the treatment of aluminium-related disorders", J. Chromatagr. 341, 123-130.
  • Ferrali, M., Ciccoli, L. and Comporti, M. (1989) "Allyl alcoholinduced hemolysis and its relation to iron release and lipid peroxidation", Biochem. Pharmacol. 38, 1819-1825.
  • Gutteridge, M.C., Rowley, D.A. and Halliwell, B. (1981) "Superoxide-dependent formation of hydroxyl radicals in the presence of iron salts. Detection of free iron in biological systems by using bleomycin-dependent degradation of DNA", Biochem. J. 199, 263-265.
  • Klebanoff, S.J., Waltersdorph, A.M., Michel, B.R. and Rosen, H. (1989) "Oxygen-based free radical generation by ferrous ions and deferoxamine", J. Biol. Chem. 264, 19765-19771.
  • Zhu, B.-Z., Har-El, R., Kitrossky, N. and Chevion, M. (1998) "New modes of action of desferrioxamine: scavenging of semiquinone radical and stimulation of hydrolysis of tetrachlorohydroquinone", Free Radic. Biol. Med. 24, 360-369.
  • Signorini, C, Ferrali, M., Ciccoli, L., Sugherini, L., Magnani, A. and Comporti, M. (1995) "Iron release, membrane protein oxidation and erythrocyte ageing", FEBS Lett. 362, 165-170.
  • Thomas, C.E., Morehouse, L.A. and Aust, S.D. (1985) "Ferritin and superoxide-dependent lipid peroxidation", J. Biol. Chem. 260, 3275-3280.
  • Browne, P., Shalev, O. and Hebbel, R.P. (1998) "The molecular pathobiology of cell membrane iron: the sickle red cell as a model", Free Radie. Biol. Med. 24, 1040-1048.
  • Kannan, R., Labotka, R. and Low, P.S. (1988) "Isolation and characterization of the hemichrome-stabilized membrane protein aggregates from sickle erythrocytes: major site of autologous antibody binding", J. Biol. Chem. 263, 13766-13773.
  • Schlüter, K. and Drenckhahn, D. (1986) "Co-clustering of denatured hemoglobin with band 3: its role in binding of autoantibodies against band 3 to abnormal and aged erythrocytes", Proc. Natl Acad. Sci. USA 83, 6137-6141.
  • Schwartz, R.S., Rybicki, A.C., Heath, R.H. and Lubin, B.H. (1987) "Protein 4.1 in sickle erythrocytes: evidence for oxidative damage", J. Biol. Chem. 262, 15666-15672.
  • Jain, S.K. and Shohet, S.B. (1984) "A novel phospholipid in irreversibly sickled cells: evidence for in vivo peroxidative membrane damage in sickle cell disease", Blood 63, 362-367.
  • Ciccoli, L., Signorini, C., Scarano, C., Rossi, V, Bambagioni, S., Ferrali, M. and Comporti, M. (1999) "Iron release in erythocytes from patients with ß-thalassemia", Free Radie. Res. 30, 407-413.
  • Ferrali, M., Ciccoli, L., Signorini, C. and Comport, M. (1990) "Iron release and erythrocyte damage in allyl alcohol intoxication in mice", Biochem. Pharmacol. 40, 1485-1490.
  • Ferrali, M., Signorini, C., Ciccoli, L. and Comporti, M. (1992) "Iron release and membrane damage in erythrocytes exposed to oxidizing agents, phenylhydazine, divicine and isouramil", Biochem. J. 285, 295-301.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.